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Measurement of Natural Killer Cell-Mediated Cytotoxicity and Migration in the Context of Hepatic Tumor Cells
Published on: February 22, 2020
The modulation of human natural killer cell activity by prostaglandins
Abstract:
Prostaglandins (PGs) have been implicated as a regulator of tumor growth in mice and humans. Since natural killer cell (NK) cytotoxicity may be an important component of immune surveillance against cancer, it is appropriate to study whether the amount of PGs produced by tumors may be sufficient to suppress NK activity. Accordingly, the effect of various PGs on the NK activity of human peripheral mononuclear cells was investigated. The percentage cytotoxicity was measured by the release of Cr51 from labeled K562 and other target cells. At very high concentrations of PG (10(-6) M), suppression was seen with PGE2, PGD2, PGA2, and PGF2 alpha. However, at concentrations of PG in the physiologic range (10(-8) M), significant suppression was seen with PGE2 and PGD2 only. The percentage suppression with PGE2 ranged from 77% to 9.5% over a range of concentrations from 10(-5) to 10(-9) M (45% at 10(-8) M). Significant suppression was observed at 10(-8) M PGE2 with 4 different targets and at effector:target ratios varying from 50:1 to 12.5:1. To assess whether the suppressive effect of PGE2 was directed at the effector and/or target cell, K562 cells or effector cells were pretreated with PGE2. Significant suppression was seen with effector cell pretreatment but not with target cell pretreatment. Finally, the suppressive effects of supernatants obtained from tumor cell lines (polyoma virus-transformed murine fibroblast cell line, PY3T3) was determined. The marked suppressive effect of the supernatant could be attributed to its content of PGE. Thus, it appears that the production of PGE by tumor cells may be an important modulator of human NK activity.
Insights
Prostaglandins (PGs), particularly PGE2 and PGD2, suppress natural killer (NK) cell activity at physiological concentrations. Tumor-derived PGE appears to inhibit NK cell function, potentially impacting cancer immune surveillance.
Area of Science:
- Immunology
- Cancer Biology
- Biochemistry
Background:
- Prostaglandins (PGs) are implicated in regulating tumor growth.
- Natural killer (NK) cell cytotoxicity is crucial for anti-cancer immune surveillance.
- The impact of tumor-produced PGs on NK cell activity requires investigation.
Purpose of the Study:
- To investigate the effect of various PGs on human NK cell activity.
- To determine the suppressive concentrations of PGs on NK cell cytotoxicity.
- To elucidate the mechanism by which PGE2 suppresses NK cells.
Main Methods:
- Human peripheral mononuclear cells were used as effector cells.
- Cr51 release assay measured NK cell cytotoxicity against target cells (K562).
- PG concentrations and pretreatment of effector/target cells were varied.
Main Results:
- PGE2 and PGD2 significantly suppressed NK activity at physiological concentrations (10(-8) M).
- PGE2 demonstrated dose-dependent suppression, with significant effects observed across various targets and effector:target ratios.
- Suppression was mediated by direct effects on effector NK cells, not target cells.
- Tumor cell line supernatants containing PGE markedly suppressed NK activity.
Conclusions:
- Tumor-derived PGE production can significantly modulate human NK cell activity.
- This PGE-mediated suppression of NK cells may represent a mechanism for immune evasion in cancer.
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